• Title/Summary/Keyword: 뇌활성

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Real-Time fMRI-Guided Functional MR Spectroscopy: The Lactate Peaks at the Motor Cortex during Hand-Grasping Tasks (실시간 기능적 자기공명영상 유도 기능적 자기공명분광법: 손운동 수행중 운동피질의 젖산변화 관찰)

  • Choi, Sun-Seob;Oh, Jong-Young;Kang, Myong-Jin;Lee, Jin-Hwa;Yoon, Seong-Kuk;Nam, Kyung-Jin
    • Investigative Magnetic Resonance Imaging
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    • v.12 no.1
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    • pp.33-39
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    • 2008
  • Purpose : There is debate concerning the observation of metabolite changes on MRS at the designated cortex during some tasks. The purpose of this study is to assess the change of the lactate content at the motor cortex during hand-grasping tasks with performing real-time fMRI-guided fMRS. Materials and Methods : Seven healthy volunteers (23-28 years old) underwent realtime fMRI during right hand grasping tasks with using a 1.5 T system. After confirming the activating area, single voxel MRS was preformed at 1) the baseline, 2) during the task and 3) after the task on the activating cortex. The three consecutive spectra were compared for observing the changes of the lactate content by the tasks. The Cho/Cr, NAA/Cr and Lac/Cr ratios were calculated manually from those spectra. Results : MRS during the tasks revealed the lactate peaks at the 1.33 ppm resonance frequency with great conspicuity at the activated area, which was identified on the real-time fMRI. After the task scan, the lactate peaks completely disappeared and the spectra recovered to the values of the baseline scan in all volunteers. At baseline, during the task and after the task, the Cho/Cr ratios were 0.81, 0.76 and 0.77, respectively, and the NAA/Cr ratios were 1.68, 1.65 and 1.72, respectively, and the Lac/Cr ratios were 0.28, 0.41 and 0.30, respectively. During the task, Lac was significantly increased by 46%. Conclusion : We observed prominent lactate peaks on MRS during hand-grasping tasks at the activated area, as was shown on the real-time fMRI. We suggest that fMRS can be used as a sensitive tool for observing the metabolite changes of the functioning brain.

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Thiobarbituric Acid Reactive Substances Levels in Brain Tissue of Aldh2 Knockout Mice Following Ethanol Exposure for 8 Weeks (Aldh2 knockout 마우스에서 8주간 에탄올 노출에 따른 뇌조직의 thiobarbituric acid reactive substances 농도)

  • Moon, Sun-In;Eom, Sang-Yong;Kim, Jung-Hyun;Yim, Dong-Hyuk;Kim, Hyong-Kyu;Kim, Yong-Dae;Kim, Heon
    • Journal of Life Science
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    • v.21 no.8
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    • pp.1163-1167
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    • 2011
  • Excessive alcohol consumption causes various degenerative brain diseases including Alzheimer's disease and Parkinson's disease. Absorbed ethanol is metabolized to acetaldehyde and acetic acid by alcohol dehydrogenase (ADH) and aldehyde dehydrogenase (ALDH). Acetaldehyde is well known as a toxicant through generation of reactive oxygen species (ROS). Therefore, ALDH2 activity may play important roles in the pathogenesis of alcohol-induced brain diseases. In this study, we demonstrated the effects of ALDH2 enzyme activity on lipid peroxidation in brain tissues and urine of mice exposed to ethanol for 8 weeks. Five male, 8-week old Aldh2 (+/+) and Aldh2 (-/-) mice (C57BL/6J strain) in each group were exposed to ethanol for 8 weeks (2 g/kg wt./day) using gavage, and those in the control group received 0.9% saline alone. Thiobarbituric acid reactive substances (TBARS) level, a marker for lipid peroxidation, was measured in whole brain tissue and urine by high performance liquid chromatography. As a result, chronic ethanol treatment did not show any statistical change on the TBARS level of brain tissue in both Aldh2 (+/+) mice and in Aldh2 (-/-) mice. However, following ethanol exposure for 8 weeks in Aldh2 (-/-) mice, the urinary TBARS levels were significantly increased to more than double compared to the pretreatment group. This result was not observed in Aldh2 (+/+) mice. These results suggest that although ALDH2 enzyme activity plays a role in the generation of ROS in the whole body, it does not seem to be important in the pathogenesis of alcohol induced degenerative brain diseases.

Study on Biochemical Pollutant Markers for Diagnosis of Marine Pollution VIII. Changes in Oxygen Radicals and Their Scavenger Enzymes of the Flounder (Paralichthys olivaceus) in the South Sea (해양오염의 진단을 위한 생화학적 오염지표에 관한 연구 VIII. 남해산 넙치 (Paralichthys olivaceus)의 산소라디칼 및 제거효소의 변화)

  • CHOI Jin-Ho;KIM Dong-Woo;KIM Jung-Hwa;KIM Dae-Ik;PARK Chung-Kil;YANG Dong Beom
    • Korean Journal of Fisheries and Aquatic Sciences
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    • v.31 no.6
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    • pp.889-894
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    • 1998
  • This study was designed as a part of efforts to investigate the biochemical pollutant markers for diagnosis of marine pollutions by changes in oxygen radicals and their scavenger enzymes of the flounder (Paralichthys olivaceus) in the South Sea of Korea. Protein contents in brain and muscle of cultured flounder in the South Sea were remarkably lower ($19\~42\%$ and $25\~41\%$, respectively) than those of wild flounder in Pohang of the East Sea as a control group. Lipid Peroxide (LPO) levels in serum of cultured in the South Sea were considerably higher ($5\~33\%$) Elan those of wild flounder in Pohang. Hydroxyl radical formations in serum of cultured flounders in the South Sea were lower ($4\~25\%$) than those of wild flounders in Pohang. Superoxide dismutase (SOD) activities in serum of cultured flounders in South Sea were also significantly lower ($7\~31\%$) than those of wild flounders in Pohang. It is believed that significant decrease of protein contents in brain and muscle, and remarkable increases of LPO in serum of cultured flounders may be used as a biochemical pollutant markers for diagnosis of marine pollutions. These results suggest that near-coastal water as well as neritic water of the South Sea might be affected by pollutant input as well as the Yellow Sea of Korea.

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The antioxidative and neuroprotective effects of Bombusae concretio Salicea and phenolic compounds on neuronal cells (신경세포에서 천축황(天竺黃)과 페놀성 물질의 항산화 및 신경보호 효과)

  • Seo, Young-Jun;Jeong, Ji-Cheon
    • The Journal of Internal Korean Medicine
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    • v.21 no.2
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    • pp.219-225
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    • 2000
  • 산화적인 스트레스가 여러가지 신경 및 비신경계에서의 병리원인으로 알려져 있다. 퇴행성 뇌질환에 대한 예방과 치료에는 항산화 방어기술이 주요대상이며 스테로이드 분자중에서 estrogen만이 산화적인 원인에 의한 신경세포사를 방어하는데 특이적인 효과를 가지고 있다. 본 연구는 천축황(天竺黃)의 항산화적 뇌신경 보호기전을 연구하는 것으로 신경세포주, 뇌세포막, 이의 산화적 정량실험법을 사용하여 천축황(天竺黃)이 갖는 항산화 및 신경보호활성이 소수성 페놀(phenolic molecules)성 물질과 유사함을 밝히게 되었다. 즉, 페놀성 물질로서 2,4,6-trimethylphenol, N-acetylserotonin, 및 5-hydroxyindole와 유사한 뇌신경 보호활성을 나타내었으며 천축황(天竺黃)은 생쥐의 N2a cell과 사람 SK-N-MC neuroblastoma cell에서 산화적인 글루탐산 독성에 대하여 보호를 하였다. 천축황(天竺黃)의 산화적 글루탐산 독성에 대한 보호활성은 과산화수소에 대한 것과 유사하였다. 이러한 항산화 활성은 $20\;{\mu}g/ml$에서, LDL의 산화적 보호 활성은 $5\;{\mu}g/ml$농도에서 발휘되었다 (최대활성은 $16\;{\mu}g/ml$). 이러한 결과는 천축황(天竺黃)이 노인성 치매에 보호효과가 있음을 시사하였다.

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Properties of Angiotensin I-Converting Enzyme Activity in the Rice Eel, Monoptevus albus (드렁허리(Monopterus albus)의 Angiotensin I-Converting Enzyme의 특성에 관하여)

  • 김성주;이금영;조경우
    • The Korean Journal of Zoology
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    • v.34 no.2
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    • pp.142-147
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    • 1991
  • Angiotensin I-converting enzyme (ACE) activity has been characterized in the rice eel, Monopterus albus. Peak activity of ACE in plasma from the rice eel was shown at around pH 10, which was more alkaline compared to that of mammals. Chloride requirements for the optimal ACE activity were different from species to spedes. ACE inhibitors, EDTA, teprotide (SQ 20, 881), and captopril (SQ 14, 225) showed dose-dependent inhibitions of ACE activity in plasma from the rice eel as well as mammals. ACE activity in the rice eel was increased by CoCI2, and the enzyme activity was more unstable at high temperature as compared to mammals The highest activity of ACE among the various tissues in the rice eel was found in the brain.

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Effects of NG-monomethyl-L-arginine and L-arginine on cerebral hemodynamics and energy metabolism during reoxygenation-reperfusion after cerebral hypoxia-ischemia in newborn piglets (급성 저산소성 허혈성 뇌손상이 유발된 신생자돈에서 재산소-재관류기 동안 NG-monomethyl-L-arginine과 L-arginine이 뇌의 혈역학 및 에너지 대사에 미치는 영향)

  • Ko, Sun Young;Kang, Saem;Chang, Yun Sil;Park, Eun Ae;Park, Won Soon
    • Clinical and Experimental Pediatrics
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    • v.49 no.3
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    • pp.317-325
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    • 2006
  • Purpose : This study was carried out to elucidate the effects of nitric oxide synthase(NOS) inhibitor, NG-monomethyl-L-arginine(L-NMMA) and nitric oxide precursor, L-arginine(L-Arg) on cerebral hemodynamics and energy metabolism during reoxygenation-reperfusion(RR) after hypoxia-ischemia(HI) in newborn piglets. Methods : Twenty-eight newborn piglets were divided into 4 groups; Sham normal control(NC), experimental control(EC), L-NMMA(HI & RR with L-NMMA), and L-Arg(HI & RR with L-Arg) groups. HI was induced by occlusion of bilateral common carotid arteries and simultaneously breathing with 8 percent oxygen for 30 mins, and followed RR by release of carotid occlusion and normoxic ventilation for one hour. All groups were monitored with cerebral hemodynamics and cytochrome $aa_3$ (Cyt $aa_3$) using near infrared spectroscopy(NIRS). $Na^+$, $K^+$-ATPase activity, lipid peroxidation products, and tissue high energy phosphate levels were determined biochemically in the cerebral cortex. Results : In experimental groups, mean arterial blood pressure, $PaO_2$, and pH decreased, and base excess and blood lactate level increased after HI compared to NC group(P<0.05). These variables subsequently returned to baseline after RR except pH. There were no differences among the experimental groups. In NIRS, oxidized hemoglobin($HbO_2$) decreased and hemoglobin(Hb) increased during HI(P<0.05) but returned to base line immediately after RR; 40 min after RR, the $HbO_2$ had decreased significantly compared to NC group(P<0.05). Changes of Cyt $aa_3$ decreased significantly compared to NC after HI and recovered at the end of the experiment. Significantly reduced cerebral cortical cell membrane $Na^+$, $K^+$-ATPase activity and increased lipid peroxidation products(P<0.05) were not improved with L-NMMA or L-Arg. Conclusion : These findings suggest that NO is not involved in the mechanism of HI and RR brain damage during the early acute phase of RR.

척수에서의 통각전달체계 연구

  • 오우택;최윤정
    • Proceedings of the Korean Society of Applied Pharmacology
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    • 1992.05a
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    • pp.29-29
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    • 1992
  • 척수에서의 통각전달은 말초에서 전달되는 통각정보가 척수내의 척수세포에 전달되면서 시작된다. 척수에 전달된 유해자극 정보는 척수내의 이차감각세포를 통하여 시상으로 전달되고 이로 인해 통증을 느끼게 된다. 이러한 척수내의 세포는 연수등의 여러 부위에 존재하는 신경 세포에 의하여 억제를 받으며 이와 같은 하향성 억제는 뇌에 존재하는 내재진 통계를 설명하는 중요한 인자가 되고 있다. 본 실험은 하부연수에 위치하는 신경핵인 Lateral reticular nucleus가 이러한 하향성 억제를 가졌는가를 알아 보고자 하였다. 이를 위하여 고양이를 마취시키고 척수궁을 절제하여 척수를 노출시키고 미세전극을 꽂아 척수세포의 활성을 기록하였다. 여덟마리의 고양이에서 31개의 척수세포를 기록하였다. 이 세포들 중 WDR세포가 14 (45%), HT가 9 (29%), LT 및 Deep세포가 각각 4 (13%)가 되었다. 이 척수세포에 북외측하부 연수인 lateral reticualr nucleus 주위를 건기자극하면 21개 (68%)의 세포가활성의 억제를 받았고 9개의 (29%) 세포는 아무런 변화가 없었고 1개의 (3%) 세포는 흥분되었다. 전기의 자극은 강도 100$\mu$A이며 자극길이는 100$\mu$S 그리고 100Hz의 주파수를 가진 펄스파였다. 이와같은 북외측하부연수의 전기자국은 신경세포의 자발활성뿐 아니라 수용장 자극에 의한 반응도 억제하였다.

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한국 재래닭의 발생.발육단계별 telomere와 telomerase activity 분석

  • 정길선;조은정;최철환;손시환
    • Proceedings of the Korea Society of Poultry Science Conference
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    • 2004.11a
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    • pp.16-18
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    • 2004
  • This study was carried out to analyze the amount of telomeres and telomerase activity of several chicken cells. Telomere quantity and telomerase activity were analyzed during organ development, growth and aging in embryonic and adults chicken. Analyzed cells were whole embryos and the cells from brain, heart, liver, kidney, lymphocytes and germinal tissues in Korean Native Chicken. The amount of telomeric DNA was analyzed by quantitative fluorescence in situ hybridization (Q-FISH) techniques using a chicken telomere repeat probe. Telomerase activity was performed by Telomeric Repeat Amplification Protocol (TRAP) assay. In results, telomerase activity was highly detectable in early embryonic cells, germinal cells and kidney cells. Whereas the cells from brain, heart, and liver had gradually down-regulated pattern of telomerase activity. Analyzing the telomere quantities on chicken cells, the amount of telomeric DNA of most chicken cells gradually decreased as growth. From these results, the amount of telomeric DNA was directly affected by telomerase activity. Consequently the telomere quantity and telomerase activity are closely relate to cell differentiation and tissue specificity during developmental and growing stages.

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Acetylcholinesterase Inhibition and Behavioral Changes of Crucian carp (Carassius auratus) Exposed to the Waterborne Parathion (Parathion에 노출된 붕어(Carassius auratus)의 Acetylcholinesterase 억제와 행동변화)

  • Cho, Kyu-Seok;Park, Jong-Ho;Lee, Won-Ho;Kang, Ju-Chan
    • Journal of Korean Society on Water Environment
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    • v.22 no.2
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    • pp.364-369
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    • 2006
  • The investigation of the Acetylcholinesterase (AChE) activity in tissues (brain, eye, muscle and serum) of crucian carp (Carassius auratus) exposed to the waterborne parathion was carried out for application as biomarker of organophosphate pesticides. The AChE activities were significantly inhibited in the experimental organs of C. auratus treated ${\geq}63{\mu}g/L$ of concentrations of parathion. The AChE activity of C. auratus was significantly reduced in response to brain (79.1~92.4%), eye (76.0~91.5%), muscle (89.7~97.6%) and serum (68.9~78.0%) after 30 days exposure. No significant mortality occurred during the experiment duration but behavioral changes occurred in the carp after exposure to the parathion were erratic swimming and convulsions. The anomaly in the carp exposed to parathion were observed in the form of scoliosis. The use of AChE activity and other adverse responses of the carp might be use as a reliable monitoring tool to detect parathion in aquatic ecosystem which might produce significant population changes.

Statistical Analysis of Brain Activity by Musical Stimulation (음악적 자극에 의한 뇌 활성도의 통계적 해석)

  • Jung, Yu-Ra;Jang, Yun-Seok
    • The Journal of the Korea institute of electronic communication sciences
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    • v.16 no.1
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    • pp.89-94
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    • 2021
  • In this paper, we presented the results of analysis with data obtained through EEG measurements to confirm the effect of musical stimulus when performing mathematical tasks. While the subject was solving a mathematical task, favorite and unfavorite music classified according to the subject's preference were presented as musical stimulus and the tasks were divided into memorization task and procedure task. The data measured in the EEG experiments was divided into theta waves, SMR waves and mid-beta waves which are the frequency bands related to concentration to compare the relative power spectrum values. In our results, in the case of comparing no music with favorite music and no music with unfavorite music, a significant difference was observed in the several channels, and the average difference was shown in the channels F3 and F4 of the frontal lobe. In that channels, the power was found to be greater when the music was presented than the case where there was no music. Depending on the subject's preference, it was confirmed that favorite music showed greater brain activity than unfavorite music.